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Mitotic spindle association of TACC3 requires Aurora-A-dependent stabilization of a cryptic α-helix.

Published version
Peer-reviewed

Type

Article

Change log

Authors

Burgess, Selena G 
Mukherjee, Manjeet 
Sabir, Sarah 
Joseph, Nimesh 
Gutiérrez-Caballero, Cristina 

Abstract

Aurora-A regulates the recruitment of TACC3 to the mitotic spindle through a phospho-dependent interaction with clathrin heavy chain (CHC). Here, we describe the structural basis of these interactions, mediated by three motifs in a disordered region of TACC3. A hydrophobic docking motif binds to a previously uncharacterized pocket on Aurora-A that is blocked in most kinases. Abrogation of the docking motif causes a delay in late mitosis, consistent with the cellular distribution of Aurora-A complexes. Phosphorylation of Ser558 engages a conformational switch in a second motif from a disordered state, needed to bind the kinase active site, into a helical conformation. The helix extends into a third, adjacent motif that is recognized by a helical-repeat region of CHC, not a recognized phospho-reader domain. This potentially widespread mechanism of phospho-recognition provides greater flexibility to tune the molecular details of the interaction than canonical recognition motifs that are dominated by phosphate binding.

Description

Keywords

disorder–order transition, intrinsically disordered protein, phosphorylation, protein kinase, protein–protein interaction, Aurora Kinase A, Cell Line, Humans, Microtubule-Associated Proteins, Protein Conformation, alpha-Helical, Spindle Apparatus

Journal Title

EMBO J

Conference Name

Journal ISSN

0261-4189
1460-2075

Volume Title

37

Publisher

Springer Science and Business Media LLC
Sponsorship
Cancer Research UK (CB4180)
Cancer Research UK (C14303/A17197)